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Ultrasonication effect on thermophysical properties of Al_2O_3 nanofluids

机译:超声效应Al_2O_3纳米流体热物理性质

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In this work, we studied the thermal conductivity and viscosity of alumina nanofluids for their excellent thermophysical properties. Here we considered the bath sonication time effects on thermal conductivity, viscosity and zeta potential of alumina nanofluid with different concentration (0.2, 0.3, 0.4, 0.5 Vol.%). We observed that the thermal conductivity of the nanofluids increased nonlinearly with an increased sonication time/energy as well as viscosity decreased. An enhancement of the thermal conductivity and viscosity at higher particle concentration is also observed. The results indicate that thermal properties of Al_2O_3 nanofluid enhances as the sonication time increases and prove Al_2O_3 nanofluid is one of the best thermostable heat transfer fluids compared to conventional cooling fluids.
机译:在这项工作中,我们研究了氧化铝纳米流体的导热性和粘度,以获得其优异的热神经性质。在这里,我们认为浴超声时间对具有不同浓度(0.2,0.3,0.4,0.5体积%)的氧化铝纳米流体的导热性,粘度和ζ电位的效应。我们观察到纳米流体的导热率随着超声处理时间/能量和粘度降低而增加。还观察到在更高颗粒浓度下进行导热率和粘度的增强。结果表明,Al_2O_3纳米流体的热性能随着超声处理时间的增加而增强,并且证明Al_2O_3纳米流体是与常规冷却流体相比的最佳热稳定传热流体之一。

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